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Journal of Nuclear Medicine

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Research ArticleMethodology

Operator-less Processing of Myocardial Perfusion SPECT Studies

Guido Germano, Paul B. Kavanagh, Johnny Chen, Parker Waechter, Hsiao-Te Su, Hosen Kiat and Daniel S. Berman
Journal of Nuclear Medicine November 1995, 36 (11) 2127-2132;
Guido Germano
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Paul B. Kavanagh
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Johnny Chen
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Parker Waechter
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Hsiao-Te Su
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Hosen Kiat
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Daniel S. Berman
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Journal of Nuclear Medicine
Vol. 36, Issue 11
November 1, 1995
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Operator-less Processing of Myocardial Perfusion SPECT Studies
Guido Germano, Paul B. Kavanagh, Johnny Chen, Parker Waechter, Hsiao-Te Su, Hosen Kiat, Daniel S. Berman
Journal of Nuclear Medicine Nov 1995, 36 (11) 2127-2132;

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Operator-less Processing of Myocardial Perfusion SPECT Studies
Guido Germano, Paul B. Kavanagh, Johnny Chen, Parker Waechter, Hsiao-Te Su, Hosen Kiat, Daniel S. Berman
Journal of Nuclear Medicine Nov 1995, 36 (11) 2127-2132;
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Cited By...

  • Multisoftware Reproducibility Study of Stress and Rest Myocardial Blood Flow Assessed with 3D Dynamic PET/CT and a 1-Tissue-Compartment Model of 82Rb Kinetics
  • Receiver-Operating-Characteristic Analysis of an Automated Program for Analyzing Striatal Uptake of 123I-Ioflupane SPECT Images: Calibration Using Visual Reads
  • Automatic Global and Regional Phase Analysis from Gated Myocardial Perfusion SPECT Imaging: Application to the Characterization of Ventricular Contraction in Patients with Left Bundle Branch Block
  • Motion-Frozen Myocardial Perfusion SPECT Improves Detection of Coronary Artery Disease in Obese Patients
  • Automated Quantification of Myocardial Ischemia and Wall Motion Defects by Use of Cardiac SPECT Polar Mapping and 4-Dimensional Surface Rendering.
  • Automatic Detection and Size Quantification of Infarcts by Myocardial Perfusion SPECT: Clinical Validation by Delayed-Enhancement MRI
  • "Motion-Frozen" Display and Quantification of Myocardial Perfusion
  • Is there a referral bias againstcatheterization of patients withreduced left ventricular ejection fraction?: Influence of ejection fraction and inducible ischemia onpost-single-photon emission computed tomographymanagement of patients without a history of coronary artery disease
  • Prediction of Myocardial Infarction Versus Cardiac Death by Gated Myocardial Perfusion SPECT: Risk Stratification by the Amount of Stress-Induced Ischemia and the Poststress Ejection Fraction
  • Quantitative Assessment of Motion Artifacts and Validation of a New Motion-Correction Program for Myocardial Perfusion SPECT
  • Incremental Prognostic Value of Post-Stress Left Ventricular Ejection Fraction and Volume by Gated Myocardial Perfusion Single Photon Emission Computed Tomography
  • Automatic Quantitation of Regional Myocardial Wall Motion and Thickening From Gated Technetium-99m Sestamibi Myocardial Perfusion Single-Photon Emission Computed Tomography
  • Prediction of Outcome of Patients With Life-Threatening Ventricular Arrhythmias Treated With Automatic Implantable Cardioverter-Defibrillators Using SPECT Perfusion Imaging
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More in this TOC Section

  • Implementation and Evaluation of Patient-Specific Three-Dimensional Internal Dosimetry
  • Patient-Specific Dosimetry Using Quantitative SPECT Imaging and Three-Dimensional Discrete Fourier Transform Convolution
  • Quantitative Blood Flow Measurement of Skeletal Muscle Using Oxygen-15-Water and PET
Show more Methodology

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